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Changes in Strain Patterns After Implantation of a Short Stem With Metaphyseal Anchorage Compared to a Standard Stem: An Experimental Study in Synthetic Bone

机译:与标准干相比,干Meta端植入短干后应变模式的变化:合成骨的实验研究

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Short stem hip arthroplasties with predominantly metaphyseal fixation, such as the METHA? stem (Aesculap, Tuttlingen, Germany), are recommended because they are presumed to allow a more physiologic load transfer and thus a reduction of stress-shielding. However, the hypothesized metaphyseal anchorage associated with the aforementioned benefits still needs to be verified. Therefore, the METHA short stem and the Bicontact? standard stem (Aesculap, Tuttlingen, Germany) were tested biomechanically in synthetic femora while strain gauges monitored their corresponding strain patterns. For the METHA stem, the strains in all tested locations including the region of the calcar (87% of the non-implanted femur) were similar to conditions of synthetic bone without implanted stem. The Bicontact stem showed approximately the level of strain of the non-implanted femur on the lateral and medial aspect in the proximal diaphysis of the femur. On the anterior and posterior aspect of the proximal metaphysis the strains reached averages of 78% and 87% of the non-implanted femur, respectively. This study revealed primary metaphyseal anchorage of the METHA short stem, as opposed to a metaphyseal-diaphyseal anchorage of the Bicontact stem.Key words: short stem hip arthroplasty, standard stem hip arthroplasty, biomechanical testing, strain gauges, strain patterns
机译:以干meta端固定为主的短茎髋关节置换术,例如METHA?建议使用茎(Aesculap,图特林根,德国),因为它们被认为可以实现更大的生理负荷转移,从而减少了应力屏蔽。然而,与上述益处相关的假设的干phy端锚固仍然需要验证。因此,METHA短茎和Bicontact?在合成股骨中对标准茎(Aesculap,德国图特林根,Aesculap)进行了生物力学测试,同时应变仪监测了其相应的应变模式。对于METHA茎,在所有测试位置(包括腓骨区域(未植入股骨的87%))中的应变与未植入茎的合成骨的情况相似。双接触茎在股骨近端骨干的外侧和内侧显示未植入股骨的应变水平。在近端干physi端的前部和后部,应变分别达到未植入股骨的平均水平的78%和87%。这项研究揭示了METHA短茎的主要干phy端锚固,而不是Bicontact茎的干phy端-干phy端锚固。关键词:短茎髋关节置换术,标准茎髋关节置换术,生物力学测试,应变仪,应变模式

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